Title :
Design and Analysis of an Ultra-Wideband Automatic Self-Calibrating Upconverter in 65-nm CMOS
Author :
Kang, Byoungjoong ; Yim, Jounghyun ; Kim, Taewan ; Ko, Sangsoo ; Ko, Won ; Shin, Heeseon ; Ryu, Inhyo ; Yang, Sung-Gi ; Bae, Jong-Dae ; Park, Hojin
Author_Institution :
Mixed Signal Core Design Team, Samsung Electron., Yongin, South Korea
fDate :
7/1/2012 12:00:00 AM
Abstract :
In this paper, an ultra-wideband (UWB) upconverter is proposed that has automatic self-calibrating circuits for the in-phase/quadrature mismatch correction and the local (LO) leakage suppression. The proposed self-calibrating circuits have been devised to have UWB functionality without help of the baseband processor. In addition, calibrating circuits do not need any additional analog-to-digital converter or sample-and-hold capacitors that are used to store and update the minimum power because the proposed calibrators find the solution from informations in current state. To verify the performance, the upconverter was applied to an UWB transmitter (Tx), operating from 3.1 to 4.8 GHz and from 6.3 to 9 GHz in 65-nm CMOS. The measured data shows UWB performance for the sideband rejection up to 9 GHz and the LO leakage suppression up to 5 GHz, respectively. The automatically calibrated Tx has error vector magnitude of lower than -20 dB, output 1-dB compression point of -6 dBm, LO leakage of lower than -43 dBm, and sideband suppression ratio of higher than 45 dBc with current consumption of 175 mA from a 1.2-V power supply for all supporting bands and time frequency codes defined in WiMedia UWB specifications.
Keywords :
CMOS integrated circuits; MMIC frequency convertors; calibration; ultra wideband technology; CMOS technology; LO leakage suppression; UWB functionality; UWB transmitter; UWB upconverter; WiMedia UWB; analog-to-digital converter; automatic self-calibrating circuits; baseband processor; current 175 mA; error vector magnitude; frequency 3.1 GHz to 4.8 GHz; frequency 6.3 GHz to 9 GHz; in-phase-quadrature mismatch correction; local leakage suppression; power supply; sample-and-hold capacitors; sideband suppression; size 65 nm; time frequency codes; ultra-wideband automatic self-calibrating upconverter; voltage 1.2 V; Amplitude modulation; Baseband; CMOS integrated circuits; Calibration; Logic gates; Mixers; Radiation detectors; Automatic calibration; in-phase/quadrature (IQ) mismatch; local (LO) leakage; sideband rejection; transmitter (Tx); ultra-wideband (UWB); upconverter;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2012.2197018